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Fundamentals of Reinforced Concrete (RC) Design
The principles of reinforced concrete design are briefly presented. Starting from fundamental assumptions and simplifications for the computation, the load‐bearing behavior of a reinforced concrete beam is explained. In this context, the difference between non‐cracked and cracked concrete is discussed. Verification and safety concepts for the design are introduced. In addition, the material behaviors of different concretes, unreinforced, enhanced by conventional bar reinforcement, and reinforced with fibers are characterized alike. The load‐bearing behavior in (biaxial) bending with and without axial force is presented in more detail, and the treatment of discontinuity regions with strut‐and‐tie models is introduced.
Fundamentals of Reinforced Concrete (RC) Design
The principles of reinforced concrete design are briefly presented. Starting from fundamental assumptions and simplifications for the computation, the load‐bearing behavior of a reinforced concrete beam is explained. In this context, the difference between non‐cracked and cracked concrete is discussed. Verification and safety concepts for the design are introduced. In addition, the material behaviors of different concretes, unreinforced, enhanced by conventional bar reinforcement, and reinforced with fibers are characterized alike. The load‐bearing behavior in (biaxial) bending with and without axial force is presented in more detail, and the treatment of discontinuity regions with strut‐and‐tie models is introduced.
Fundamentals of Reinforced Concrete (RC) Design
Gaganelis, Georgios (Autor:in) / Mark, Peter (Autor:in) / Forman, Patrick (Autor:in)
Optimization Aided Design ; 19-36
09.05.2022
18 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
strut‐and‐tie model , fibers , bending , fundamentals , reinforced , cracked , design , concrete , safety , verification
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